CHMFL-ABL-039 is a type II native ABL kinase and drug-resistant V299L mutant BCR-ABL inhibitor with the IC50s of 7.9 nM and 27.9 nM, respectively. CHMFL-ABL-039 is used in the research of chronic myeloid leukemia. 了解更多
SNIPER(ABL)-062, in which an ABL inhibitor is linked to a ligand of cIAP1 via a linker containing a variable polyethylene glycol (PEG) unit, shows a potent activity to degrade the BCR-ABL protein. 了解更多
CHMFL-ABL-121 is a highly potent type II ABL kinase inhibitor with IC50s of 2 nM and 0.2 nM against purified inactive ABL wt and T315I kinase protein, respectively. 了解更多
1-Naphthyl PP1 hydrochloride is a selective inhibitor of src family kinases v-Src and c-Fyn as well as the tyrosine kinase c-Abl (IC50 values are 1.0, 0.6, 0.6, 18 and 22 μM for v-Src, c-Fyn, c-Abl, CDK2 and CAMK II respectively). 了解更多
Aya Hasan Alshammari, .et al. Discrimination of hand-foot skin reaction caused by tyrosine kinase inhibitors based on direct keratinocyte toxicity and vascular endothelial growth factor receptor-2 inhibition, Biochem Pharmacol, 2022, Mar;197:114914 PMID: 35041812
David E J Klawon, .et al. Altered selection on a single self-ligand promotes susceptibility to organ-specific T cell infiltration, J Exp Med, 2021, Jun 7;218(6) PMID: 33914024
Reiko Watanabe, .et al. Development of an In Silico Prediction Model for P-glycoprotein Efflux Potential in Brain Capillary Endothelial Cells toward the Prediction of Brain Penetration, J Med Chem, 2021, Mar 11;64(5):2725-2738 PMID: 33619967
Li Li, .et al. Evidence for activated Lck protein tyrosine kinase as the driver of proliferation in acute myeloid leukemia cell, CTV-1, Leukemia Res, 2019, 78:12-20 PMID: 30660961
Sano T, .et al. Gliding Basal Cell Migration of the Urothelium during Wound Healing, Am J Pathol, 2018, Nov;188(11):2564-2573 PMID: 30121259
Ines Peschel, .et al. FLT3 and FLT3-ITD phosphorylate and inactivate the cyclin-dependent kinase inhibitor p27Kip1 in acute myeloid leukemia, Haematologica, 2017, Aug; 102(8): 1378-1389 PMID: 28522571
Brittany M. Duggan, .et al. Tyrosine kinase inhibitors of Ripk2 attenuate bacterial cell wall-mediated lipolysis, inflammation and dysglycemia, Sci Rep, 2017, 7: 1578 PMID: 28484277
John D. Leonard, .et al. Identification of natural regulatory T cell epitopes reveals convergence on a dominant autoantigen, Immunity, 2017, Jul 18; 47(1): 107-117.e8 PMID: 28709804
Fujita KI, .et al. Involvement of the Transporters P-Glycoprotein and Breast Cancer Resistance Protein in Dermal Distribution of the Multikinase Inhibitor Regorafenib and Its Active Metabolites, J Pharm Sci, 2017, Sep;106(9):2632-2641 PMID: 28479358
Li T, .et al. Bruton's tyrosine kinase potentiates ALK signaling and serves as a potential therapeutic target of neuroblastoma, Oncogene, 2018, Nov;37(47):6180-6194 PMID: 30013190
S. Dallari, .et al. Src family kinases Fyn and Lyn are constitutively activated and mediate plasmacytoid dendritic cell responses, Nat Commun, 2017, 8: 14830 PMID: 28368000
Andrea Haerzschel, .et al. BCR and chemokine responses upon anti-IgM and anti-IgD stimulation in chronic lymphocytic leukaemia, Ann Hematol, 2016, 95(12): 1979-1988 PMID: 27542958
Aya Hasan Alshammari, .et al. Discrimination of hand-foot skin reaction caused by tyrosine kinase inhibitors based on direct keratinocyte toxicity and vascular endothelial growth factor receptor-2 inhibition, Biochem Pharmacol, 2022, Mar;197:114914 PMID: 35041812
Yamamoto Y, .et al. Development of a sandwich enzyme-linked immunosorbent assay for the quantification of ponatinib in serum, Anal Biochem, 2019, Feb 13. pii: S0003-2697(18)31083-2 PMID: 30771339
N Naganna, .et al. Amino alkynylisoquinoline and alkynylnaphthyridine compounds potently inhibit acute myeloid leukemia proliferation in mice, EBioMedicine, 2019, Jan 24. pii: S2352-3964(19)30012-X PMID: 30686755
Takuya Hirao, .et al. Altered intracellular signaling by imatinib increases the anti-cancer effects of tyrosine kinase inhibitors in chronic myelogenous leukemia cells, Cancer Sci, 2018, Jan; 109(1): 121-131 PMID: 29121435
Brittany M. Duggan, .et al. Tyrosine kinase inhibitors of Ripk2 attenuate bacterial cell wall-mediated lipolysis, inflammation and dysglycemia, Sci Rep, 2017, 7: 1578 PMID: 28484277
Fujita KI, .et al. Involvement of the Transporters P-Glycoprotein and Breast Cancer Resistance Protein in Dermal Distribution of the Multikinase Inhibitor Regorafenib and Its Active Metabolites, J Pharm Sci, 2017, Sep;106(9):2632-2641 PMID: 28479358
Rami Shinnawi, .et al. Monitoring Human-Induced Pluripotent Stem Cell-Derived Cardiomyocytes with Genetically Encoded Calcium and Voltage Fluorescent Reporters, Stem Cell Reports, 2015, Oct 13; 5(4): 582-596 PMID: 26372632
Tetsuya Saita, .et al. Preparation of Antibodies and Development of an Enzyme-Linked Immunosorbent Assay for the Tyrosine Kinase Inhibitors Lapatinib and Nilotinib., Biol Pharm Bull. , 2015, 38(10):1652-7 PMID: 26424026
Y Kaibori, .et al. EphA2 phosphorylation at Ser897 by the Cdk1/MEK/ERK/RSK pathway regulates M-phase progression via maintenance of cortical rigidity, the FASEB Journal, 2019, Jan 22:fj201801519RR PMID: 30668924
Aya Hasan Alshammari, .et al. Discrimination of hand-foot skin reaction caused by tyrosine kinase inhibitors based on direct keratinocyte toxicity and vascular endothelial growth factor receptor-2 inhibition, Biochem Pharmacol, 2022, Mar;197:114914 PMID: 35041812
Reiko Watanabe, .et al. Development of an In Silico Prediction Model for P-glycoprotein Efflux Potential in Brain Capillary Endothelial Cells toward the Prediction of Brain Penetration, J Med Chem, 2021, Mar 11;64(5):2725-2738 PMID: 33619967
BM Duggan, .et al. RIPK2 Dictates Insulin Responses to Tyrosine Kinase Inhibitors in Obese Male Mice, Endocrinology, 2020, May 30;bqaa086 PMID: 32473019
Li Li, .et al. Evidence for activated Lck protein tyrosine kinase as the driver of proliferation in acute myeloid leukemia cell, CTV-1, Leukemia Res, 2019, 78:12-20 PMID: 30660961
Brittany M. Duggan, .et al. Tyrosine kinase inhibitors of Ripk2 attenuate bacterial cell wall-mediated lipolysis, inflammation and dysglycemia, Sci Rep, 2017, 7: 1578 PMID: 28484277
TAK-659 is a highly potent, selective, reversible and orally available dual inhibitor of spleen tyrosine kinase (SYK) and fms related tyrosine kinase 3 (FLT3), with an IC50 of 3.2 nM and 4.6 nM for SYK and FLT3, respectively. 了解更多
HS-10296 hydrochloride is an orally available and third-Generation inhibitor of epidermal growth factor receptor (EGFR)-activating mutations and T790M-resistant mutation with limited activity against wild-type EGFR. 了解更多
Alectinib Hydrochloride (CH5424802 Hydrochloride; RO5424802 Hydrochloride; AF-802 Hydrochloride) is a potent, selective, and orally available ALK inhibitor with an IC50 of 1.9 nM and a Kd value of 2.4 nM (in an ATP-competitive manner), and also inhibits ALK F1174L and ALK R1275Q with IC50s of 1 nM and 3.5 nM, respectively. 了解更多
ALK-IN-6 (compound 11) is an orally bioavailable inhibitor of anaplastic lymphoma kinase (ALK), with IC50 values of 71 nM, 18.72 nM and 36.81 nM for ALK wild, ALK F1196M and ALK F1174L, respectively. 了解更多
PF-06250112 is a potent, highly selective, orally bioavailable BTK inhibitor with an IC50 of 0.5 nM, shows inhibitory effect toward BMX nonreceptor tyrosine kinase and TEC with IC50s of 0.9 nM and 1.2 nM, respectively. 了解更多
Izumi-Nakaseko H, .et al. Dasatinib can Impair Left Ventricular Mechanical Function But May Lack Proarrhythmic Effect: A Proposal of Non-clinical Guidance for Predicting Clinical Cardiovascular Adverse Events of Tyrosine Kinase Inhibitors, Cardiovasc Toxicol, 2019, Jul 6 PMID: 31280457
Julia M Harrison, .et al. Muscle fiber-type specific terminal Schwann cell pathology leads to sprouting deficits following partial denervation in SOD1 G93A mice, Neurobiol Dis, 2020, Aug 20;145:105052 PMID: 32827689
JOIN OUR REWARDS PROGRAM TODAY AND START EARNING POINTS RIGHT AWAY !
Beginning Aug 26th, 2019, all customers purchasing Adooq products can earn Reward Points by collecting and registering point codes . Registered codes will be associated with your order and points will be awarded ($1 = 1 point). E.g. Orders valued at $300, will receive 300 points. Orders valued at $1000, will receive 400 points.